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Comprehensive Functional Annotation of 77 Prostate Cancer Risk Loci

Genome-wide association studies (GWAS) have revolutionized the field of cancer genetics, but the causal links between increased genetic risk and onset/progression of disease processes remain to be identified. Here we report the first step in such an endeavor for prostate cancer. We provide a compreh...

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Autores principales: Hazelett, Dennis J., Rhie, Suhn Kyong, Gaddis, Malaina, Yan, Chunli, Lakeland, Daniel L., Coetzee, Simon G., Henderson, Brian E., Noushmehr, Houtan, Cozen, Wendy, Kote-Jarai, Zsofia, Eeles, Rosalind A., Easton, Douglas F., Haiman, Christopher A., Lu, Wange, Farnham, Peggy J., Coetzee, Gerhard A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907334/
https://www.ncbi.nlm.nih.gov/pubmed/24497837
http://dx.doi.org/10.1371/journal.pgen.1004102
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author Hazelett, Dennis J.
Rhie, Suhn Kyong
Gaddis, Malaina
Yan, Chunli
Lakeland, Daniel L.
Coetzee, Simon G.
Henderson, Brian E.
Noushmehr, Houtan
Cozen, Wendy
Kote-Jarai, Zsofia
Eeles, Rosalind A.
Easton, Douglas F.
Haiman, Christopher A.
Lu, Wange
Farnham, Peggy J.
Coetzee, Gerhard A.
author_facet Hazelett, Dennis J.
Rhie, Suhn Kyong
Gaddis, Malaina
Yan, Chunli
Lakeland, Daniel L.
Coetzee, Simon G.
Henderson, Brian E.
Noushmehr, Houtan
Cozen, Wendy
Kote-Jarai, Zsofia
Eeles, Rosalind A.
Easton, Douglas F.
Haiman, Christopher A.
Lu, Wange
Farnham, Peggy J.
Coetzee, Gerhard A.
author_sort Hazelett, Dennis J.
collection PubMed
description Genome-wide association studies (GWAS) have revolutionized the field of cancer genetics, but the causal links between increased genetic risk and onset/progression of disease processes remain to be identified. Here we report the first step in such an endeavor for prostate cancer. We provide a comprehensive annotation of the 77 known risk loci, based upon highly correlated variants in biologically relevant chromatin annotations— we identified 727 such potentially functional SNPs. We also provide a detailed account of possible protein disruption, microRNA target sequence disruption and regulatory response element disruption of all correlated SNPs at [Image: see text]. 88% of the 727 SNPs fall within putative enhancers, and many alter critical residues in the response elements of transcription factors known to be involved in prostate biology. We define as risk enhancers those regions with enhancer chromatin biofeatures in prostate-derived cell lines with prostate-cancer correlated SNPs. To aid the identification of these enhancers, we performed genomewide ChIP-seq for H3K27-acetylation, a mark of actively engaged enhancers, as well as the transcription factor TCF7L2. We analyzed in depth three variants in risk enhancers, two of which show significantly altered androgen sensitivity in LNCaP cells. This includes rs4907792, that is in linkage disequilibrium ([Image: see text]) with an eQTL for NUDT11 (on the X chromosome) in prostate tissue, and rs10486567, the index SNP in intron 3 of the JAZF1 gene on chromosome 7. Rs4907792 is within a critical residue of a strong consensus androgen response element that is interrupted in the protective allele, resulting in a 56% decrease in its androgen sensitivity, whereas rs10486567 affects both NKX3-1 and FOXA-AR motifs where the risk allele results in a 39% increase in basal activity and a 28% fold-increase in androgen stimulated enhancer activity. Identification of such enhancer variants and their potential target genes represents a preliminary step in connecting risk to disease process.
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spelling pubmed-39073342014-02-04 Comprehensive Functional Annotation of 77 Prostate Cancer Risk Loci Hazelett, Dennis J. Rhie, Suhn Kyong Gaddis, Malaina Yan, Chunli Lakeland, Daniel L. Coetzee, Simon G. Henderson, Brian E. Noushmehr, Houtan Cozen, Wendy Kote-Jarai, Zsofia Eeles, Rosalind A. Easton, Douglas F. Haiman, Christopher A. Lu, Wange Farnham, Peggy J. Coetzee, Gerhard A. PLoS Genet Research Article Genome-wide association studies (GWAS) have revolutionized the field of cancer genetics, but the causal links between increased genetic risk and onset/progression of disease processes remain to be identified. Here we report the first step in such an endeavor for prostate cancer. We provide a comprehensive annotation of the 77 known risk loci, based upon highly correlated variants in biologically relevant chromatin annotations— we identified 727 such potentially functional SNPs. We also provide a detailed account of possible protein disruption, microRNA target sequence disruption and regulatory response element disruption of all correlated SNPs at [Image: see text]. 88% of the 727 SNPs fall within putative enhancers, and many alter critical residues in the response elements of transcription factors known to be involved in prostate biology. We define as risk enhancers those regions with enhancer chromatin biofeatures in prostate-derived cell lines with prostate-cancer correlated SNPs. To aid the identification of these enhancers, we performed genomewide ChIP-seq for H3K27-acetylation, a mark of actively engaged enhancers, as well as the transcription factor TCF7L2. We analyzed in depth three variants in risk enhancers, two of which show significantly altered androgen sensitivity in LNCaP cells. This includes rs4907792, that is in linkage disequilibrium ([Image: see text]) with an eQTL for NUDT11 (on the X chromosome) in prostate tissue, and rs10486567, the index SNP in intron 3 of the JAZF1 gene on chromosome 7. Rs4907792 is within a critical residue of a strong consensus androgen response element that is interrupted in the protective allele, resulting in a 56% decrease in its androgen sensitivity, whereas rs10486567 affects both NKX3-1 and FOXA-AR motifs where the risk allele results in a 39% increase in basal activity and a 28% fold-increase in androgen stimulated enhancer activity. Identification of such enhancer variants and their potential target genes represents a preliminary step in connecting risk to disease process. Public Library of Science 2014-01-30 /pmc/articles/PMC3907334/ /pubmed/24497837 http://dx.doi.org/10.1371/journal.pgen.1004102 Text en © 2014 Hazelett et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hazelett, Dennis J.
Rhie, Suhn Kyong
Gaddis, Malaina
Yan, Chunli
Lakeland, Daniel L.
Coetzee, Simon G.
Henderson, Brian E.
Noushmehr, Houtan
Cozen, Wendy
Kote-Jarai, Zsofia
Eeles, Rosalind A.
Easton, Douglas F.
Haiman, Christopher A.
Lu, Wange
Farnham, Peggy J.
Coetzee, Gerhard A.
Comprehensive Functional Annotation of 77 Prostate Cancer Risk Loci
title Comprehensive Functional Annotation of 77 Prostate Cancer Risk Loci
title_full Comprehensive Functional Annotation of 77 Prostate Cancer Risk Loci
title_fullStr Comprehensive Functional Annotation of 77 Prostate Cancer Risk Loci
title_full_unstemmed Comprehensive Functional Annotation of 77 Prostate Cancer Risk Loci
title_short Comprehensive Functional Annotation of 77 Prostate Cancer Risk Loci
title_sort comprehensive functional annotation of 77 prostate cancer risk loci
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907334/
https://www.ncbi.nlm.nih.gov/pubmed/24497837
http://dx.doi.org/10.1371/journal.pgen.1004102
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